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Jitter of corticospinal neurons during repetitive transcranial magnetic stimulation. Method and possible clinical implications

机译:反复经颅磁刺激过程中皮质脊髓神经元的抖动。方法和可能的临床意义

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Background Repetitive transcranial magnetic stimulation (rTMS) of the motor cortex activates corticospinal neurons mainly through the depolarization of cortico-cortical axons belonging to interneurons of superficial layers. Objective We used single-fiber electromyography (SFEMG) to estimate the "central jitter" of activation latency of interneural pools from one pulse of TMS to another. Methods We evaluated 10 healthy subjects and one patient with multiple sclerosis. By recording SFEMG evoked activity from the left first dorsal interosseous (FDI), we first used a standard repetitive electrical 3 Hz stimulation of the ulnar nerve at the wrist to calculate the mean consecutive difference from at least 10 different potentials. The same procedure was applied during 3 Hz repetitive TMS of the contralateral motor cortex. The corticospinal monosynaptic connection of the FDI and the selectivity of SFEMG recording physiologically justified the subtraction of the "peripheral jitter" from the whole cortico-muscular jitter, obtaining an estimation of the actual "central jitter." Results All subjects completed the study. The peripheral jitter was 28 μs ± 6 and the cortico-muscular jitter was 344 μs ± 97. The estimated central jitter was 343 ± 97 μs. In the patient the central jitter was 846 μs, a value more than twice the central jitter in healthy subjects. Conclusion Current results demonstrate that the evaluation of the central component of the cumulative cortico-muscular latency variability in healthy subjects is feasible with a minimally invasive approach. We present and discuss this methodology and provide a "proof of concept" of its potential clinical applicability in a patient with multiple sclerosis.
机译:背景运动皮层的反复经颅磁刺激(rTMS)主要通过皮层轴突所属的皮层神经轴突去极化来激活皮层神经元。目的我们使用单纤维肌电图(SFEMG)来估计从一个TMS脉冲到另一个TMS脉冲的神经间池激活潜伏期的“中央抖动”。方法我们评估了10名健康受试者和1名多发性硬化症患者。通过记录左第一背骨间(SDIMG)引起的SFEMG诱发的活动,我们首先对腕部尺神经进行了标准的3 Hz重复电刺激,以计算至少10种不同电位的连续平均差。在对侧运动皮层的3 Hz重复TMS期间应用相同的程序。 FDI的皮质脊髓单突触连接和SFEMG记录的选择性在生理上证明了从整个皮质肌肉抖动中减去“周围抖动”是合理的,从而获得了对实际“中央抖动”的估计。结果所有受试者均完成了研究。外围抖动为28μs±6,皮层肌肉抖动为344μs±97。估计的中心抖动为343±97μs。在患者中,中央抖动为846μs,是健康受试者中中央抖动的两倍多。结论目前的结果表明,采用微创方法评估健康受试者体内累积的皮质-肌肉潜伏期变异性的中心成分是可行的。我们提出并讨论这种方法,并提供其在多发性硬化症患者中潜在临床适用性的“概念证明”。

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